Hwang, H. H. M.; Hsu, H. M.
Study of Reliability-Based Criteria for Seismic Design of Reinforced Concrete Frame Buildings.
National Science Foundation, Washington, DC.,
August 10, 1991,
188 p.
Identifying Number(s): NCEER-91-0023
Keywords: ; Reliability; Dynamic response; Risk; Earthquake engineering; Earthquake resistant structures; Loads (Forces); Reinforced concrete; Design criteria; Concrete construction; Design standards; Mathematical models; Framed structures; Seismic waves
Engelhardt, M. D.; Popov, E. P.
Behavior of Long Links in Eccentrically Braced Frames.
National Science Foundation, Washington, DC.; American Iron and Steel Inst., Washington, DC.,
January 1989,
415 p.
Identifying Number(s): UCB/EERC-89/01
Keywords: ; Dynamic response; Plastic analysis; Steel structures; Earthquake resistant structures; Earthquake engineering; Beams (Supports); Loads (Forces); Structural vibration; Seismic design; Frames; Test facilities; Structural members; Dynamic loads; Cyclic loads; Deformation; Shear stress; Bending moments
Yang, J. N.; Li, Z.
Instantaneous Optimal Control for Linear, Nonlinear and Hysteretic Structures - Stable Controllers.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC.,
November 15, 1991,
57 p.
Keywords: ; Dynamic response; Vibration isolators; Earthquake engineering; Matrices (Mathematics); Controllers; Lyapunov functions; Vibration damping; Mathematical models; Algorithms; Nonlinear systems; Seismic waves
Fan, K.; Gazetas, G.
Seismic Response of Single Piles and Pile Groups.
National Science Foundation, Washington, DC.; National Center for Earthquake Engineering Research, Buffalo, NY.,
January 10, 1991,
56 p.
Keywords: ; Dynamic response; Seismic waves; Earthquake resistant structures; Earthquake engineering; Loads (Forces); Structural vibration; Mechanical properties; Seismic effects; Pile foundations; Soil mechanics; Dynamic structural analysis
Poland, C. D.; Malley, J. O.
Procedure for the Seismic Evaluation of Buildings in the Central and Eastern United States.
National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany.,
April 2, 1992,
469 p.
Identifying Number(s): NCEER-92-0008
Keywords: Dynamic response; Earthquake resistance; Hazards; Buildings; Steel structures; Eastern region (United States); Central plains region (United States); Earthquake engineering; Earthquake damage; Evaluation; Structural vibration; Concrete structures; Dynamic loads; Structural analysis
Saiidi, M.; Douglas, B.; Feng, S.; Hwang, E.; Maragakis, E.
Effects of Axial Force on Frequency of Prestressed Concrete Bridges.
National Science Foundation, Washington, DC.,
August 1992,
52 p.
Identifying Number(s): CCEER-92-4
Keywords: ; Prestressed concrete; Dynamic response; Dynamic structural analysis; Fourier transformation; Earthquake engineering; Loads (Forces); Structural vibration; Deflection; Displacement; Concrete structures; Resonant frequencies; Mathematical models; Girder bridges
El-Attar, A. G.; White, R. N.; Gergely, P.
Shake Table Test of a 1/8 Scale Three-Story Lightly Reinforced Concrete Building.
National Science Foundation, Washington, DC.; National Center for Earthquake Engineering Research, Buffalo, NY.,
February 28, 1991,
175 p.
Keywords: Dynamic response; Design analysis; Buildings; Earthquake engineering; Loads (Forces); Structural vibration; Reinforced concrete; Test facilities; Structural members; Displacement; Model tests; Concrete structures; Vibration tests; Structural analysis; Shake Table Tests; Bending moments
Demetriades, G. F.; Constantinou, M. C.; Reinhorn, A. M.
Study of Wire Rope Systems for Seismic Protection of Equipment in Buildings.
New York State Science and Technology Foundation, Albany.,
May 20, 1992,
161 p.
Identifying Number(s): NCEER-92-0012
Keywords: ; Dynamic response; Buildings; Vibration isolators; Earthquake resistant structures; Earthquake engineering; Wire rope; Shock; Structural vibration; Vibration damping; Seismic effects; Displacement
Anderson, J. C.; Bertero, V. V.
Seismic Performance of an Instrumented Six-Story Steel Building.
National Science Foundation, Washington, DC.,
November 1991,
148 p.
Identifying Number(s): UCB/EERC-91/11
Keywords: Dynamic response; Earthquake damage; Failure; Building codes; Steel structures; Earthquake engineering; Stress analysis; Structural vibration; Earthquakes; Whittier Narrows Earthquake; Vibration damping; Seismic effects; Nonlinear systems; Ductility
Yang, J. N.; Li, Z.; Vongchavalitkul, S.
Generalization of Optimal Control Theory: Linear and Nonlinear Structures.
National Center for Earthquake Engineering Research, Buffalo, NY.; New York State Science and Technology Foundation, Albany.; National Science Foundation, Washington, DC.,
November 2, 1992,
89 p.
Keywords: ; Dynamic response; Vibration isolators; Earthquake resistant structures; Earthquake engineering; Structural vibration; Vibration damping; Optimization; Linear systems; Mathematical models; Nonlinear systems; Control theory